| Literature DB >> 33258312 |
Guobiao Cen1, Yufan Xia1, Chuanxi Zhao1, Yong Fu1, Yipeng An2, Ye Yuan1, Tingting Shi1, Wenjie Mai1.
Abstract
Anion exchange offers great flexibility and high precision in phase control, compositional engineering, and optoelectronic property tuning. Different from previous successful anion exchange process in liquid solution, herein, a vapor-phase anion-exchange strategy is developed to realize the precise phase and bandgap control of large-scale inorganic perovskites by using gas injection cycle, producing some perovskites such as CsPbCl3 which has never been reported in thin film morphology. Ab initio calculations also provide the insightful mechanism to understand the impact of anion exchange on tuning the electronic properties and optimizing the structural stability. Furthermore, because of precise control of specific atomic concentrations, intriguing tunable photoluminescence is observed and photodetectors with tunable photoresponse edge from green to ultraviolet light can be realized accurately with an ultrahigh spectral resolution of 1 nm. Therefore, a new, universal vapor-phase anion exchange method is offered for inorganic perovskite with fine-tunable optoelectronic properties.Entities:
Keywords: anion exchange; bandgap engineering; large scale; phase conversion; precise control
Year: 2020 PMID: 33258312 DOI: 10.1002/smll.202005226
Source DB: PubMed Journal: Small ISSN: 1613-6810 Impact factor: 13.281